Investigation Of Radiation Damage In Silicon Sensors For The Phase 2 Upgrade Of The Cms Outer Tracker


Download Investigation Of Radiation Damage In Silicon Sensors For The Phase 2 Upgrade Of The Cms Outer Tracker PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get Investigation Of Radiation Damage In Silicon Sensors For The Phase 2 Upgrade Of The Cms Outer Tracker book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages.

Download

Investigation of Radiation Damage in Silicon Sensors for the Phase-2 Upgrade of the CMS Outer Tracker


Investigation of Radiation Damage in Silicon Sensors for the Phase-2 Upgrade of the CMS Outer Tracker

Author: Jan-Ole Müller-Gosewisch

language: en

Publisher:

Release Date: 2021*


DOWNLOAD





Evolution of Silicon Sensor Technology in Particle Physics


Evolution of Silicon Sensor Technology in Particle Physics

Author: Frank Hartmann

language: en

Publisher: Springer Nature

Release Date: 2024-12-07


DOWNLOAD





This third edition of a well-received monograph provides a comprehensive overview of the state-of-the-art of detectors and their evolution. In addition to the silicon sensor technology described in the second edition, the book covers the following new topics: precise timing detectors (3D sensors and sensors with intrinsic gain layers), passive CMOS sensors, new developments in HV-CMOS sensors, and sparking in strip and pixel detectors. The chapter on the HL-LHC CMS upgrades has been updated, and the historical overview has been enriched with a section on the UA2 SPD pad detector system. The book includes a wealth of schematics and photos of detectors. It is also valuable for detector courses at the master/PhD level.

Development of a New Tracker for the CMS Upgrade Phase 2 and Study of the HL-LHC Physics Reach


Development of a New Tracker for the CMS Upgrade Phase 2 and Study of the HL-LHC Physics Reach

Author: Martin Delcourt

language: en

Publisher: Presses universitaires de Louvain

Release Date: 2020-11-26


DOWNLOAD





The standard model of particle physics provides a coherent description of highenergy physics processes and has been hugely successful in providing experimental predictions. Among its long list of achievements, the most significant is arguably that of the discovery of the Higgs boson half a century after being theorised, providing the last cornerstone needed for the standard model to become fully consistent. Despite huge successes, the standard model still suffers from major shortcomings. On the path leading towards a better understanding of particle physics, an in-depth study of the Higgs boson is key. This relentless work of characterising the properties of the Higgs boson is currently being undertaken at the Large Hadron Collider, where high-energy proton collisions are being recorded by dedicated detectors, providing a continuous improvement to the understanding of the standard model. Amid tremendous achievements, some processes, remain too weak to be detected with the current installations. One such measurement is the combined production of two Higgs bosons allowing for a direct handle on the Higgs self-coupling parameter of the standard model. To maximise the physics reach of the collider, it will be subjected to a major upgrade, allowing for a strong increase in luminosity. Such a dramatic change will bring major challenges to the experiments recording these collisions and upgrades are required if they are to maintain their outstanding performance. This thesis explores the upgrade of the CMS silicon strip detector, centred around the in-beam characterisation of detector module prototypes and discusses the physics reach of the upgraded machine, with an emphasis on Higgs boson pair production in the bbWW(l) final state.